1.Efficacy and Safety of SGLT2 Inhibitors in Elderly (≥75 Years) With Type 2 Diabetes: A Real-World Study
Siew Wai Shuit ; Shamharini Nagaratnam ; Fei Bing Yong ; Norisha Nandini Passkaren ; Keen Tien Boey ; Nur Syahirah Asarapoo ; Sathya Rajagopal ; Vikganesa Mahalingam ; Zanariah Hussein
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):36-
Introduction:
Sodium-glucose-linked-transporter inhibitors (SGLT2-i)
have demonstrated cardiovascular and renal benefits in
type 2 diabetes mellitus (T2DM), but patients aged ≥75
years remain underrepresented in major trials, creating
uncertainty regarding their risk–benefit profile. Real-world
data show mixed safety signals. In Malaysia, local evidence
is limited despite a growing elderly diabetic population.
This study evaluates the glycemic efficacy and safety of
SGLT2-i in advanced elderly patients in a real-world public
hospital setting.
Methodology:
We conducted a retrospective observational cohort study
of patients aged ≥75 years with T2DM initiated on SGLT2-i
in Hospital Putrajaya (2020–2024). Electronic records were
reviewed for demographics, comorbidities, medications,
and biochemical parameters. Outcomes at 6–12 months
assessed glycemic control and safety. Adverse events
and discontinuation rates were recorded. Patients with
incomplete data, type 1 diabetes, active malignancy, or
severe renal impairment were excluded.
Results:
A total of 104 patients (mean age 78.2 years; 54% female)
were included with a high proportion (76.9%) classified as at
high cardiovascular risk due to established macrovascular
disease (57.7%) or nephropathy (53.8%). Indications for
SGLT2-i initiation were glycemic control alone (69.2%) and
together with cardiorenal protection (58.7%). Glycemic
control remained stable (hemoglobin A1c: 7.66–7.45%; p =
0.076), with preserved renal function (estimated glomerular
filtration rate: 58.65–58.11 mL/min/1.73 m²; p = 0.575).
Overall safety was favorable, with 90.4% experiencing no
adverse events. Minor adverse events included urinary
tract infections (2.9%) and polyuria (1.9%). ASCVD-related
hospitalizations occurred in 4.8% of patients, with a low
discontinuation rate (7.7%). A statistically significant
weight reduction was observed (baseline 66.67 kg, −1.01
kg; p = 0.005) but was not clinically significant. Proteinuria
improvement was noted in 15.7% of patients.
Conclusion
SGLT2-i are safe and well-tolerated in elderly T2DM
patients (≥75 years), with stable glycemic control, preserved
renal function, and minimal adverse events, supporting
their use in very elderly Asian populations.
Aged
;
Diabetes Mellitus, Type 2
;
Sodium-Glucose Transporter 2 Inhibitors
2.The Hidden Risk of a First-Line Therapy: Renal Abscess With SGLT2 Inhibitor Use
Wei Ton Wong ; Khairi Syazwan Rashid ; Afiq Hazim Ab Rahim
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):52-53
Introduction:
Sodium-glucose cotransporter-2 (SGLT2) inhibitors are
cornerstone therapies for heart failure and diabetes,
offering proven cardiorenal benefits. However, expanded
use necessitates vigilance regarding adverse effects,
particularly genitourinary infections. While mild cystitis is
common, serious upper urinary tract infections remain rare
and potentially life-threatening. We describe a case of renal
abscess presenting as recurrent urinary tract infections
(UTI) following SGLT2 inhibitor initiation, emphasizing
the need for clinical vigilance.
Case:
A 69-year-old male with a significant cardiovascular
history, including heart failure with reduced ejection
fraction (HFrEF), hypertrophic cardiomyopathy with an
implantable cardioverter-defibrillator for non-sustained
ventricular tachycardia, diabetes mellitus, hypertension,
and hyperlipidemia, presented with a 1-week history of
right flank pain, dysuria, urinary frequency, and fever.
Initial labs confirmed infection: leukocytosis (22.6 × 10³/ µL),
markedly elevated CRP (200 mg/L), and bacteriuria. He was
diagnosed with a UTI and started on IV Cefuroxime. This
marked his third UTI admission in 5 months, following
discharge just 3 weeks prior for septic shock secondary
to UTI, establishing a relapsing pattern. Subsequent urine
and blood cultures were unremarkable. Medication review
revealed Dapagliflozin had been initiated for HFrEF
8 months ago. Following clinical improvement from each prior UTI episode, Dapagliflozin was consistently
restarted. Despite an initial antibiotic response, symptoms
recurred after discharge each time. The recurrent nature
of his infections prompted a renal ultrasound revealing a
large (5.3 × 7.5 × 7.4 cm), non-drainable, heterogeneously
hypoechoic collection at the left kidney’s mid-lower pole,
diagnostic of an early renal abscess.
Conclusion
This report highlights renal abscess as a rare and severe
complication of SGLT2 inhibitor therapy. It serves as a
critical reminder that recurrent or relapsing UTIs in patients
on these agents should prompt immediate investigation
with renal imaging to rule out deep-seated pathology
rather than simple cystitis. While these drugs offer proven
cardiorenal benefits, their role in promoting urological
infections necessitates a cautious approach.
Abscess
;
Sodium-Glucose Transporter 2 Inhibitors
3.Resistance patterns of urinary tract pathogens isolated from patients with type 2 diabetes mellitus on sodium glucose co-transporter 2 inhibitors admitted in a tertiary hospital in the Philippines: A single-center retrospective cohort study.
Catheryn Rose RUDINAS ; Ceryl Cindy TAN
Journal of the ASEAN Federation of Endocrine Societies 2025;40(2):138-139
BACKGROUND
Congruent with the increasing prevalence of diabetes, a growing armamentarium of anti-diabetes medications has been introduced. Among these are sodium glucose co-transporter-2 inhibitors (SGLT2i).
OBJECTIVESSGLT2i use has been linked to an increased incidence of urogenital infections. The study aims to compare resistance patterns of urinary tract isolates among patients with diabetes who are on SGLT2i and not on SGLT2i.
METHODOLOGYSingle-center retrospective cohort study. A total of 464 patients (75 on SGLT2i, 389 not on SGLT2i) with DM type 2 and urinary tract infection were included. Urine culture results were compared.
RESULTSA similar pattern of urinary tract isolates was found between groups except for C. albicans being more common in the SGLT2i group. There was no significant association between the presence of resistant urinary tract pathogens and the use of SGLT2i. There was no statistically significant difference in resistance rates between groups, except for Imipenem (p = 0.015).
CONCLUSIONSGLT2i use per se does not play a pivotal role in mediating bacterial resistance in urinary tract pathogens among patients with DM type 2. We do not recommend for or against the use of specific antimicrobials based on SGLT2 inhibitor alone. Patient’s clinical profile along with urine culture test results remain key factors in patient management.
Human ; Sodium-glucose Transporter 2 Inhibitors ; Urinary Tract Infections
4.Pharmacotherapy in patients with heart failure with reduced ejection fraction: A systematic review and meta-analysis.
Jia TANG ; Ping WANG ; Chenxi LIU ; Jia PENG ; Yubo LIU ; Qilin MA
Chinese Medical Journal 2025;138(8):925-933
BACKGROUND:
Angiotensin receptor neprilysin inhibitors (ARNIs), angiotensin-converting enzyme inhibitors (ACEIs), angiotensin receptor blockers (ARBs), β-blockers (BBs), and mineralocorticoid receptor antagonists (MRAs) are the cornerstones in treating heart failure with reduced ejection fraction (HFrEF). Sodium-glucose cotransporter 2 inhibitors (SGLT-2is) are included in HFrEF treatment guidelines. However, the effect of SGLT-2i and the five drugs on HFrEF have not yet been systematically evaluated.
METHODS:
PubMed, Embase, and the Cochrane Library were searched for randomized controlled trials (RCTs) from inception dates to September 23, 2022. Additional trials from previous relevant reviews and references were also included. The primary outcomes were changes in left ventricular ejection fraction (LVEF), left ventricular end-diastolic diameter/dimension (LVEDD), left ventricular end-systolic diameter/dimension (LVESD), left ventricular end-diastolic volume (LVEDV), and left ventricular end-systolic volume (LVESV), left ventricular end-systolic volume index (LVESVI), and left ventricular end-diastolic volume index (LVEDVI). Secondary outcomes were New York Heart Association (NYHA) class, 6-min walking distance (6MWD), B-type natriuretic peptide (BNP) level, and N-terminal pro-BNP (NT-proBNP) level. The effect sizes were presented as the mean difference (MD) with 95% confidence interval (CI).
RESULTS:
We included 68 RCTs involving 16,425 patients. Compared with placebo, ARNI + BB + MRA + SGLT-2i was the most effective combination to improve LVEF (15.63%, 95% CI: 9.91% to 21.68%). ARNI + BB + MRA + SGLT-2i (5.83%, 95% CI: 0.53% to 11.14%) and ARNI + BB + MRA (3.83%, 95% CI: 0.72% to 6.90%) were superior to the traditional golden triangle ACEI + BB + MRA in improving LVEF. ACEI + BB + MRA + SGLT-2i was better than ACEI + BB + MRA (-8.05 mL/m 2 , 95% CI: -14.88 to -1.23 mL/m 2 ) and ACEI + BB + SGLT-2i (-18.94 mL/m 2 , 95% CI: -36.97 to -0.61 mL/m 2 ) in improving LVEDVI. ACEI + BB + MRA + SGLT-2i (-3254.21 pg/mL, 95% CI: -6242.19 to -560.47 pg/mL) was superior to ARB + BB + MRA in reducing NT-proBNP.
CONCLUSIONS:
Adding SGLT-2i to ARNI/ACEI + BB + MRA is beneficial for reversing cardiac remodeling. The new quadruple drug "ARNI + BB + MRA + SGLT-2i" is superior to the golden triangle "ACEI + BB + MRA" in improving LVEF.
REGISTRATION
PROSPERO; No. CRD42022354792.
Humans
;
Heart Failure/physiopathology*
;
Stroke Volume/physiology*
;
Angiotensin Receptor Antagonists/therapeutic use*
;
Angiotensin-Converting Enzyme Inhibitors/therapeutic use*
;
Sodium-Glucose Transporter 2 Inhibitors/therapeutic use*
;
Randomized Controlled Trials as Topic
;
Mineralocorticoid Receptor Antagonists/therapeutic use*
;
Adrenergic beta-Antagonists/therapeutic use*
5.Chinese expert consensus on metformin in clinical practice: 2023 update.
Chinese Journal of Internal Medicine 2023;62(6):619-630
Metformin has robust glucose-lowering effects and multiple benefits beyond hypoglycemic effects. It can also be used in combination with various hypoglycemic drugs and is cost effective. In the absence of the strong indications of glucagon like peptide-1 receptor agonist (GLP-1RA) or sodium glucose cotransporter 2 inhibitor (SGLT2i) for cardiorenal protection, metformin should be used as the first-line pharmacological treatment for newly diagnosed type 2 diabetes and the basic drug for the combined treatment of hypoglycemic drugs. Metformin does not increase the risk of liver and kidney function damage, but patients with renal dysfunction should adjust the dosage of metformin based on estimated glomerular filtration rate (eGFR) levels. Moreover, the correct use of metformin does not increase the risk of lactic acidosis. Because long-term use of metformin is associated with a decrease in vitamin B12 levels, patients with insufficient intake or absorption of vitamin B12 should be regularly monitored and appropriately supplemented with vitamin B12. In view of the new progress made in the basic and clinical research related to metformin, the consensus updating expert group updated the consensus on the basis of the Expert Consensus on the Clinical Application of Metformin (2018 Edition).
Humans
;
Consensus
;
Diabetes Mellitus, Type 2/complications*
;
Hypoglycemic Agents
;
Metformin/therapeutic use*
;
Sodium-Glucose Transporter 2 Inhibitors/therapeutic use*
;
Vitamins/therapeutic use*
;
China
8.Cardioprotective mechanism of SGLT2 inhibitor against myocardial infarction is through reduction of autosis.
Kai JIANG ; Yue XU ; Dandan WANG ; Feng CHEN ; Zizhuo TU ; Jie QIAN ; Sheng XU ; Yixiang XU ; John HWA ; Jian LI ; Hongcai SHANG ; Yaozu XIANG
Protein & Cell 2022;13(5):336-359
Sodium-glucose cotransporter 2 (SGLT2) inhibitors reduce cardiovascular mortality in patients with diabetes mellitus but the protective mechanism remains elusive. Here we demonstrated that the SGLT2 inhibitor, Empagliflozin (EMPA), suppresses cardiomyocytes autosis (autophagic cell death) to confer cardioprotective effects. Using myocardial infarction (MI) mouse models with and without diabetes mellitus, EMPA treatment significantly reduced infarct size, and myocardial fibrosis, thereby leading to improved cardiac function and survival. In the context of ischemia and nutritional glucose deprivation where autosis is already highly stimulated, EMPA directly inhibits the activity of the Na+/H+ exchanger 1 (NHE1) in the cardiomyocytes to regulate excessive autophagy. Knockdown of NHE1 significantly rescued glucose deprivation-induced autosis. In contrast, overexpression of NHE1 aggravated the cardiomyocytes death in response to starvation, which was effectively rescued by EMPA treatment. Furthermore, in vitro and in vivo analysis of NHE1 and Beclin 1 knockout mice validated that EMPA's cardioprotective effects are at least in part through downregulation of autophagic flux. These findings provide new insights for drug development, specifically targeting NHE1 and autosis for ventricular remodeling and heart failure after MI in both diabetic and non-diabetic patients.
Animals
;
Diabetes Mellitus
;
Diabetes Mellitus, Type 2/drug therapy*
;
Glucose
;
Humans
;
Mice
;
Myocardial Infarction/metabolism*
;
Sodium-Glucose Transporter 2 Inhibitors/therapeutic use*
;
Ventricular Remodeling
10.Effects of SGLT2i on 24-hour ambulatory blood pressure in patients with type 2 diabetes complicating hypertension: a meta-analysis.
Li TIAN ; Qiong Ying WANG ; Run Min SUN ; Miao Miao QI ; Ya Xin LI ; Xin GAO ; Li Qiong ZHANG ; Xue MA ; Hang SHI ; Jing YU ; Feng BAI
Chinese Journal of Cardiology 2021;49(10):1000-1011
Objective: To analyze the effects of different types of sodium-glucose cotransporter 2 inhibitors (SGLT2i) on 24-hour ambulatory blood pressure in patients with type 2 diabetes mellitus and hypertension. Method: In this meta-analysis, we searched for randomized controlled trials on the effect of SGLT2i on 24-hour ambulatory blood pressure in patients with type 2 diabetes and hypertension. Three databases, namely PubMed, Web of Science and Cochrane Library, were searched. The search was organized on the concept of 3 conceptual groups: the first group contained terms used to describe SGLT2i, the second group contained terms related to blood pressure, and the third group contained terms used to describe randomized controlled trials. The search time was from the establishment of the database to December 2020. The inclusion and exclusion criteria were formulated in accordance with the requirements of the Cochrane systematic review. According to whether the heterogeneity of the study was significant or not, a random effect model or a fixed effect model were used to conduct the analysis on the impact of different types of SGLT2i on 24-hour ambulatory blood pressure and day and night blood pressure in patients with type 2 diabetes and hypertension. Further subgroup analysis was performed to define potential factors, which might lead to clinical heterogeneity. Results: Seven clinical trials were finally included. The result of the meta-analysis showed that compared with placebo group, SGLT2i could reduce the 24-hour dynamic systolic blood pressure of patients with type 2 diabetes and hypertension by 4.36 mmHg (1 mmHg=0.133 kPa). Reduction was 4.59, 3.74, 5.06, and 3.64 mmHg by canagliflozin, dapagliflozin, empagliflozin, and ertugliflozin respectively; SGLT2i could reduce the 24-hour dynamic diastolic blood pressure of patients with type 2 diabetes and hypertension by 2.20 mmHg, and the reduction was 2.30, 1.22, 2.00, and 2.69 mmHg by canagliflozin, dapagliflozin, empagliflozin and ertugliflozin respectively. SGLT2i could reduce the daytime systolic blood pressure of patients with type 2 diabetes and hypertension by 5.25 mmHg, and reduction was 5.38, 4.87, 6.00, and 4.37 mmHg by canagliflozin, dapagliflozin, empagliflozin and ertugliflozin, respectively. Simultaneously, SGLT2i could reduce the diastolic blood pressure of patients with type 2 diabetes and hypertension by 2.62 mmHg, and the reduction was 2.56, 2.47, and 2.80 mmHg by canagliflozin, empagliflozin and ertugliflozin, respectively. SGLT2i could reduce the nighttime systolic blood pressure of patients with type 2 diabetes and hypertension by 3.62 mmHg, and the reduction was 2.09, 2.06, 3.92, and 2.45 mmHg by canagliflozin, dapagliflozin, empagliflozin and ertugliflozin, respectively. At the same time, SGLT2i could reduce the nighttime diastolic blood pressure of patients with type 2 diabetes and hypertension by 1.60 and 1.51 mmHg, the reduction was 1.53 and 2.58 mmHg by canagliflozin, empagliflozin and ertugliflozin, respectively. Conclusion: SGLT2i can reduce 24-hour ambulatory blood pressure in patients with type 2 diabetes and hypertension.
Blood Pressure
;
Blood Pressure Monitoring, Ambulatory
;
Diabetes Mellitus, Type 2/drug therapy*
;
Humans
;
Hypertension/drug therapy*
;
Sodium-Glucose Transporter 2 Inhibitors/therapeutic use*


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